首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Spacer Effects of Donor-pi Spacer-Acceptor Sensitizers. on Photophysical Properties in Dye-Sensitized Solar Cells
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Spacer Effects of Donor-pi Spacer-Acceptor Sensitizers. on Photophysical Properties in Dye-Sensitized Solar Cells

机译:施主-pi间隔基受体敏化剂的间隔基效应。染料敏化太阳能电池的光物理性质研究

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The donor (D)-pi spacer-acceptor (A) framework with electronic push pull effects provides suitable molecular architectures for molecular design used as efficient light-harvesting sensitizers in dye-sensitized solar cells (DSSCs). Efficiencies of light harvesting and electron injection to the semiconductor of sensitizers play critical roles in DSSC performance. Here, we employed density functional theory to systematically and comparatively investigate the effects of pi-spacers of D-pi spacer-A types of dyes in solution and adsorbed on a (TiO2)(38) anatase cluster on various photophysical properties. The absorption spectra, electron transfer probability, and related photophysical properties of D-pi spacer-A types of dyes were investigated as functions of different types (thiophene (Th)- and phenyl (Ph)- based), lengths, and planarity (bridging two neighboring rings; dithieno-thiophene (DTT) and fluorene (FL)-based) of pi-spacers, while the D (diphenylamine) and A (cyano-acrylic acid) moieties remained the same. Spacers could significantly influence the lambda(max) values and electron transfer probability. The spacer length has a red-shifted effect in lambda(max) for the Th-, DTT-, and FL-based sensitizers due to their planar conjugated structures; nevertheless, the lambda(max) values are saturated by ring number three. In contrast, the Ph-based spacers induce a blue-shift in lambda(max) with spacer length due to their nonplanar structures. Interestingly, the Th- and DTT-based spacers with lower LUMO energy levels trap more electron density and thus reduce the probability of electron density transfer to TiO2 phi(ET)(lambda(max), TiO2) upon photoexcitation; moreover, the phi(ET)(lambda(max), TiO2) values decrease significantly with ring number. On the other hand, the phi(ET)(lambda(max), TiO2) values for the Ph- and FL-based sensitizers are less sensitive to the spacer length. Interestingly, the orders of theoretical maximum short-circuit current density of four studied families of molecules are correlated with their lambda(max) values. Our study shows the Th-Th motif used as a pi-spacer balances the spectral match with solar radiation and phi(ET)(lambda(max), TiO2) suitable for DSSC applications. Our results based on molecular and electronic structures could be used for rational sensitizer design of organic dyes for DSSC applications.
机译:具有电子推挽效应的供体(D)-pi间隔基受体(A)框架为分子设计提供了合适的分子体系结构,这些分子结构可用作染料敏化太阳能电池(DSSC)中的高效光收集敏化剂。光收集和电子注入敏化剂半导体的效率在DSSC性能中起着至关重要的作用。在这里,我们采用密度泛函理论系统地和比较地研究了溶液中D-pi spacer A型染料的pi垫片对吸附在(TiO2)(38)锐钛矿簇上的各种光物理性质的影响。研究了D-pi spacer-A型染料的吸收光谱,电子转移概率以及相关的光物理性质,这些染料是不同类型(基于噻吩(Th)-和苯基(Ph)-),长度和平面度(桥连)的函数两个相邻的环;π-间隔基的二噻吩并噻吩(DTT)和芴(FL)基,而D(二苯胺)和A(氰基丙烯酸)部分保持相同。垫片可能会显着影响lambda(max)值和电子转移概率。基于Th,DTT和FL的敏化剂,由于其平面共轭结构,所以间隔物的长度在λ(max)中有红移效应。但是,lambda(max)值被三号环饱和。相比之下,基于Ph的间隔物由于其非平面结构而导致间隔物长度的λ(max)发生蓝移。有趣的是,具有较低LUMO能级的基于Th和DTT的间隔物会捕获更多的电子密度,从而降低了光激发时电子密度转移到TiO2 phi(ET)(lambda(max),TiO2)的可能性;此外,phi(ET)(lambda(max),TiO2)值随着环数的增加而显着降低。另一方面,基于Ph和FL的敏化剂的phi(ET)(λ(max),TiO2)值对间隔物的长度较不敏感。有趣的是,四个研究的分子家族的理论最大短路电流密度的阶数与其lambda(max)值相关。我们的研究表明,用作pi-spacer的Th-Th图案可与太阳辐射和适用于DSSC的phi(ET)(lambda(max),TiO2)平衡光谱匹配。我们基于分子和电子结构的结果可用于合理的DSSC应用有机染料敏化剂设计。

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